CN108880764A - Discrete pilot interposition method and device in OFDM-MIMO communication system - Google Patents

Discrete pilot interposition method and device in OFDM-MIMO communication system Download PDF

Info

Publication number
CN108880764A
CN108880764A CN201710316675.0A CN201710316675A CN108880764A CN 108880764 A CN108880764 A CN 108880764A CN 201710316675 A CN201710316675 A CN 201710316675A CN 108880764 A CN108880764 A CN 108880764A
Authority
CN
China
Prior art keywords
ofdm
pilot
antennas
communication system
scattered pilot
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Withdrawn
Application number
CN201710316675.0A
Other languages
Chinese (zh)
Inventor
张文军
董庆龙
寇亚军
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Shanghai National Engineering Research Center of Digital Television Co Ltd
Original Assignee
Shanghai National Engineering Research Center of Digital Television Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Shanghai National Engineering Research Center of Digital Television Co Ltd filed Critical Shanghai National Engineering Research Center of Digital Television Co Ltd
Priority to CN201710316675.0A priority Critical patent/CN108880764A/en
Publication of CN108880764A publication Critical patent/CN108880764A/en
Withdrawn legal-status Critical Current

Links

Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L5/00Arrangements affording multiple use of the transmission path
    • H04L5/003Arrangements for allocating sub-channels of the transmission path
    • H04L5/0048Allocation of pilot signals, i.e. of signals known to the receiver
    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L27/00Modulated-carrier systems
    • H04L27/26Systems using multi-frequency codes
    • H04L27/2601Multicarrier modulation systems
    • H04L27/2602Signal structure

Landscapes

  • Engineering & Computer Science (AREA)
  • Signal Processing (AREA)
  • Computer Networks & Wireless Communication (AREA)
  • Radio Transmission System (AREA)
  • Mobile Radio Communication Systems (AREA)

Abstract

The present invention provides discrete pilot interposition method and devices in a kind of OFDM-MIMO communication system, which is characterized in that including:In the case of being transmitted and received for two antennas, the scattered pilot of two antennas is close in a certain range in OFDM frequency domain resource, it is uniform that appropriateness is spaced in time-domain resource, so that the scattered pilot interval being inserted into is moderately uniform, both pilot signal had not been allowed to be perfected monopoly some OFDM symbol or some subcarrier, the pilot signal of two antenna transmittings is not allowed to be overlapped yet, to while having taken into account saving ofdm system time/frequency source block, also reducing two antenna transmitting signal overlap brings to greatest extent influences, the scattered pilot of two antennas as close as possible to, it is also possible that the characteristic of channel that receiving end estimates two antennas respectively is close as far as possible, improve the accuracy of channel estimation.

Description

Discrete pilot interposition method and device in OFDM-MIMO communication system
Technical field
The invention belongs to the communications field more particularly to wireless broadband communication orthogonal frequency division multiplexing-multiple-input and multiple-outputs (OFDM-MIMO) discrete pilot interposition method and device of system.
Background technique
Orthogonal frequency division multiplexing (OFDM) technology and multiple-input, multiple-output (MIMO) technology are current Wireless Broadband Communication Systems applications Hot technology, have a wide range of applications in digital wireless communication field.In common ofdm system, require to provide in time-frequency Pilot tone is inserted into source to be used for channel estimation.After OFDM technology is combined with MIMO technology, insertion pilot tone is also needed.
Since MIMO technology is to emit different pilot frequency sequences using different antennas, it is common practice to difference transmitting day The different pilot frequency sequences that line issues can be overlapped on time-domain and frequency-domain resource block, need to use the side of Digital Signal Processing in receiving end Method separates the pilot frequency sequence of different antennae, then does channel estimation respectively again.Although such method can save part For the running time-frequency resource of wireless transmission, but due to the overlapping of more transmitting antenna signals, so that pilot tone isolation technics is more multiple Miscellaneous, pilot tone separation failure can also be made by improperly handling, to reduce the reliability of transmission.
Summary of the invention
To solve the above-mentioned problems, the invention proposes discrete pilot interposition methods in a kind of OFDM-MIMO communication system And device, this method and device are suitable for the case where double antenna is received and dispatched.
In OFDM-MIMO communication system provided by the present invention in discrete pilot interposition method, have the feature that, Including:In the case of being transmitted and received for double antenna, position coordinates (x, y) of the scattered pilot on OFDM running time-frequency resource by with Lower formula is calculated:
Wherein:X is subcarrier serial number, and 0≤x≤C-1;C is subcarrier total number, and C >=24;Y is OFDM symbol sequence Number, and 0≤y≤S-1;S is OFDM symbol sum, and S >=4;A is antenna serial number, and a=0,1;I is in previous OFDM symbol Scattered pilot serial number, has
Indicate downward round numbers part.
Still optionally further, in OFDM-MIMO communication system provided by the present invention in discrete pilot interposition method, also Can have such feature, wherein OFDM symbol sum value is S=4, and subcarrier total number value is C=24,
In such cases,
Still optionally further, in OFDM-MIMO communication system provided by the present invention in discrete pilot interposition method, also It can have such feature, wherein then the scattered pilot position coordinates of two antennas are as follows:
Antenna a=0:(6,0),(12,0),(18,0),(6,1),(18,1),(12,2),(6,3),(12,3),(18,3);
Antenna a=1:(7,0),(13,0),(19,0),(7,1),(19,1),(13,2),(7,3),(13,3),(19,3).
Still optionally further, in OFDM-MIMO communication system provided by the present invention in discrete pilot interposition method, also Can have such feature, wherein OFDM symbol sum value is S=5, and subcarrier total number value is C=26,
In such cases,
Still optionally further, in OFDM-MIMO communication system provided by the present invention in discrete pilot interposition method, also It can have such feature, wherein then the scattered pilot position coordinates of two antennas are as follows:
Antenna a=0:(6,0),(12,0),(18,0),(24,0),(6,1),(18,1),(12,2),(24,2),(6,3), (18,3),(6,4),(12,4),(18,4),(24,4);
Antenna a=1:(7,0),(13,0),(19,0),(25,0),(7,1),(19,1),(13,2),(25,2),(7,3), (19,3),(7,4),(13,4),(19,4),(25,4)。
Still optionally further, in OFDM-MIMO communication system provided by the present invention in discrete pilot interposition method, also It can have such feature, wherein close in scattered pilot a certain range of two antennas.
Still optionally further, in OFDM-MIMO communication system provided by the present invention in discrete pilot interposition method, also It can have such feature, wherein the scattered pilot of two antennas is adjacent.
Still optionally further, in OFDM-MIMO communication system provided by the present invention in discrete pilot interposition method, also It can have such feature, wherein the scattered pilot of two antennas is adjacent, and the scattered pilot interval being inserted into is moderately equal It is even.
Still optionally further, in OFDM-MIMO communication system provided by the present invention in discrete pilot interposition method, also It can have such feature, wherein the scattered pilot being inserted into:Symbol in the intercarrier spacing and time domain of frequency domain sub-carriers Between be spaced appropriateness it is uniform.
In addition, having such the present invention also provides scattered pilot insertion apparatus in a kind of OFDM-MIMO communication system Feature, including:
Scattered pilot is inserted into module, and in the case of being transmitted and received for double antenna, scattered pilot is in OFDM time-frequency Position coordinates (x, y) in resource are calculated by following formula:
Wherein:X is subcarrier serial number, and 0≤x≤C-1;C is subcarrier total number, and C >=24;Y is OFDM symbol sequence Number, and 0≤y≤S-1;S is OFDM symbol sum, and S >=4;A is antenna serial number, and a=0,1;I is in previous OFDM symbol Scattered pilot serial number, has
Indicate downward round numbers part.
The function and effect of the present invention:
What is proposed through the invention is suitable for the scattered pilot insertion side of the OFDM-MIMO communication system of double antenna transmitting-receiving Method and device have not only taken into account time-domain resource block, the frequency domain resource block for saving ofdm system, have also reduced difference to greatest extent Antenna, which emits signal overlap bring, to be influenced, so that the complexity for handling receiving end signal substantially reduces.In addition, two antennas Scattered pilot be designed as the characteristic of channel that may make receiving end to estimate two antennas respectively as close as possible to such scheme It is close as far as possible, the accuracy of channel estimation is improved, the repetition to the characteristic of channel is reduced and estimates and calculate, complexity decline.
Detailed description of the invention
Fig. 1 is scattered pilot insertion position schematic diagram in the first embodiment of the present invention;
Fig. 2 is scattered pilot insertion position schematic diagram in the second embodiment of the present invention.
Specific embodiment
It is illustrated in conjunction with scattered pilot interleaved plan of the Fig. 1 and Fig. 2 to OFDM-MIMO communication system.In embodiment, from Position coordinates (x, y) of the pilot tone in OFDM time-domain resource, in frequency domain resource are dissipated to be calculated by following formula:
Wherein:
● x is subcarrier serial number, and 0≤x≤C-1;
● C is subcarrier total number, and C >=24;
● y is OFDM symbol serial number, and 0≤y≤S-1;
● S is OFDM symbol sum, and S >=4;
● a is antenna serial number, and a=0,1;
● i is scattered pilot serial number in previous OFDM symbol, is had
Indicate downward round numbers part.
Oneself each comfortable scattered pilot position of two transmitting antennas of MIMO emits pilot signal, in oneself non-discrete Pilot frequency locations do not emit signal.The scattered pilot insertion realized using such method, did not both allow pilot signal to perfect monopoly Some OFDM symbol or some subcarrier do not allow the pilot signal of two antenna transmittings to be overlapped yet, to save having taken into account While ofdm system time/frequency source block, also reducing two antenna transmitting signal overlap brings to greatest extent influences.Two The scattered pilot of a antenna is as close as possible to it is also possible that receiving end connects the characteristic of channel that two antennas estimate respectively as far as possible Closely, the accuracy of channel estimation is improved.Scattered pilot interval appropriateness (such as the carrier wave employed in embodiment of the method insertion Between between be divided into 6, be divided into 1) between intersymbol, but also receiving end only needs to do simple linear interpolation or filter when doing channel estimation Wave can reach preferable channel estimation effect.To substantially reduce the complexity of receiving end signal processing.
First embodiment:S=4, C=24
In such cases,
Then the scattered pilot position coordinates of two antennas are as follows:
First antenna a=0:(6,0),(12,0),(18,0),(6,1),(18,1),(12,2),(6,3),(12,3), (18,3)
Second antenna a=1:(7,0),(13,0),(19,0),(7,1),(19,1),(13,2),(7,3),(13,3), (19,3)
Fig. 1 gives under the embodiment, and the method for the invention is inserted into the position of scattered pilot in OFDM running time-frequency resource Figure.Reticulate pattern lattice square indicates the scattered pilot insertion position of first antenna (antenna 0), and twill lattice square indicates the second antenna (day Line 1) scattered pilot insertion position, white square indicates non-discrete pilot frequency locations.First antenna (antenna 0) is only in reticulate pattern lattice side Block emits discrete guide-frequency signal, and the second antenna (antenna 1) only emits discrete guide-frequency signal in twill lattice square.
Second embodiment:S=5, C=26
In such cases,
Then the scattered pilot position coordinates of two antennas are as follows:
First antenna a=0:(6,0),(12,0),(18,0),(24,0),(6,1),(18,1),(12,2),(24,2), (6,3),(18,3),(6,4),(12,4),(18,4),(24,4)
Second antenna a=1:(7,0),(13,0),(19,0),(25,0),(7,1),(19,1),(13,2),(25,2), (7,3),(19,3),(7,4),(13,4),(19,4),(25,4)
Fig. 2 gives under the embodiment, and the method for the invention is inserted into the position of scattered pilot in OFDM running time-frequency resource Figure.Reticulate pattern lattice square indicates the scattered pilot insertion position of first antenna (antenna 0), and twill lattice square indicates the second antenna (day Line 1) scattered pilot insertion position, white square indicates non-discrete pilot frequency locations.First antenna (antenna 0) is only in reticulate pattern lattice side Block emits discrete guide-frequency signal, and the second antenna (antenna 1) only emits discrete guide-frequency signal in twill lattice square.
Those of ordinary skill in the art it should be appreciated that more than specification be only the numerous embodiments of the present invention One or more of embodiment, and not use limitation of the invention.Any equalization for embodiment described above becomes The technical solutions such as change, modification and equivalent substitute will all fall in power of the invention as long as meeting spirit of the invention In the range of sharp claim is protected.

Claims (10)

1. discrete pilot interposition method in a kind of OFDM-MIMO communication system, which is characterized in that including:
In the case of being transmitted and received for two antennas, the scattered pilot of two antennas certain model in OFDM frequency domain resource Enclose it is interior close, in time-domain resource be spaced appropriateness it is uniform.
2. discrete pilot interposition method in OFDM-MIMO communication system as described in claim 1, which is characterized in that
Wherein, the scattered pilot of two antennas is adjacent in OFDM frequency domain resource.
3. discrete pilot interposition method in OFDM-MIMO communication system as claimed in claim 2, which is characterized in that
Wherein, the scattered pilot of two antennas is adjacent, and the scattered pilot interval being inserted into is moderately uniform.
4. discrete pilot interposition method in OFDM-MIMO communication system as described in claim 1, which is characterized in that including:Needle In the case of transmitting and receiving to double antenna, position coordinates (x, y) of the scattered pilot on OFDM running time-frequency resource are by following formula It is calculated:
Wherein:X is subcarrier serial number, and 0≤x≤C-1;C is subcarrier total number, and C >=24;Y is OFDM symbol serial number, and 0≤y≤S-1;S is OFDM symbol sum, and S >=4;A is antenna serial number, and a=0,1;I is discrete in previous OFDM symbol leads Frequency serial number, has
Indicate downward round numbers part.
5. discrete pilot interposition method in OFDM-MIMO communication system as claimed in claim 4, which is characterized in that
Wherein, OFDM symbol sum value is S=4, and subcarrier total number value is C=24,
In such cases,
6. discrete pilot interposition method in OFDM-MIMO communication system as claimed in claim 5, which is characterized in that
Wherein, then the scattered pilot position coordinates of two antennas are as follows:
Antenna a=0:(6,0),(12,0),(18,0),(6,1),(18,1),(12,2),(6,3),(12,3),(18,3);
Antenna a=1:(7,0),(13,0),(19,0),(7,1),(19,1),(13,2),(7,3),(13,3),(19,3).
7. discrete pilot interposition method in OFDM-MIMO communication system as claimed in claim 4, which is characterized in that
Wherein, OFDM symbol sum value is S=5, and subcarrier total number value is C=26,
In such cases,
8. discrete pilot interposition method in OFDM-MIMO communication system as claimed in claim 7, which is characterized in that
Wherein, then the scattered pilot position coordinates of two antennas are as follows:
Antenna a=0:(6,0),(12,0),(18,0),(24,0),(6,1),(18,1),(12,2),(24,2),(6,3),(18, 3),(6,4),(12,4),(18,4),(24,4);
Antenna a=1:(7,0),(13,0),(19,0),(25,0),(7,1),(19,1),(13,2),(25,2),(7,3),(19, 3),(7,4),(13,4),(19,4),(25,4)。
9. scattered pilot insertion apparatus in a kind of OFDM-MIMO communication system, which is characterized in that including:
Scattered pilot is inserted into module, in the case of being transmitted and received for two antennas, the scattered pilot of two antennas It is close in a certain range in OFDM frequency domain resource, it is uniform that appropriateness is spaced in time-domain resource.
10. scattered pilot insertion apparatus in OFDM-MIMO communication system as claimed in claim 9, which is characterized in that including: Wherein, the scattered pilot of two antennas is adjacent, and the scattered pilot interval being inserted into is moderately uniform.
CN201710316675.0A 2017-05-08 2017-05-08 Discrete pilot interposition method and device in OFDM-MIMO communication system Withdrawn CN108880764A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201710316675.0A CN108880764A (en) 2017-05-08 2017-05-08 Discrete pilot interposition method and device in OFDM-MIMO communication system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201710316675.0A CN108880764A (en) 2017-05-08 2017-05-08 Discrete pilot interposition method and device in OFDM-MIMO communication system

Publications (1)

Publication Number Publication Date
CN108880764A true CN108880764A (en) 2018-11-23

Family

ID=64287173

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201710316675.0A Withdrawn CN108880764A (en) 2017-05-08 2017-05-08 Discrete pilot interposition method and device in OFDM-MIMO communication system

Country Status (1)

Country Link
CN (1) CN108880764A (en)

Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN101076005A (en) * 2007-06-25 2007-11-21 北京创毅视讯科技有限公司 Method for transmitting discrete guide-frequency signal of multi-carrier system
US20110216808A1 (en) * 2001-10-17 2011-09-08 Nortel Networks Limited Scattered pilot pattern and channel estimation method for mimo-ofdm systems
CN102761504A (en) * 2012-07-10 2012-10-31 河北工业大学 Estimation method for TD-LTE digital relay downlink channel
CN103036844A (en) * 2004-03-15 2013-04-10 北方电讯网络有限公司 Pilot design for OFDM systems with four transmit antennas
US20150055725A1 (en) * 2008-03-04 2015-02-26 Microsoft Corporation Pilot Design for Wireless System

Patent Citations (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20110216808A1 (en) * 2001-10-17 2011-09-08 Nortel Networks Limited Scattered pilot pattern and channel estimation method for mimo-ofdm systems
CN103036844A (en) * 2004-03-15 2013-04-10 北方电讯网络有限公司 Pilot design for OFDM systems with four transmit antennas
CN101076005A (en) * 2007-06-25 2007-11-21 北京创毅视讯科技有限公司 Method for transmitting discrete guide-frequency signal of multi-carrier system
US20150055725A1 (en) * 2008-03-04 2015-02-26 Microsoft Corporation Pilot Design for Wireless System
CN102761504A (en) * 2012-07-10 2012-10-31 河北工业大学 Estimation method for TD-LTE digital relay downlink channel

Similar Documents

Publication Publication Date Title
KR101481590B1 (en) Reference signal transmission method for downlink multiple input multiple output system
US8570939B2 (en) Methods and systems for choosing cyclic delays in multiple antenna OFDM systems
CN108632189B (en) Method and device for sending uplink data and user equipment
CN104253680A (en) Synchronous signal sending method and synchronous signal sending device for FBMC (filter bank multicarrier) system
Lee Energy efficient selected mapping schemes based on antenna grouping for industrial massive MIMO-OFDM antenna systems
US10334605B2 (en) Time domain pilot of single-carrier MIMO system and synchronization method thereof
CN105141563A (en) Space frequency combined modulation design scheme used for MIMO-OFDM system
CN103281265A (en) Pilot sequence structure in MIMO-OFDM/OQAM (Multi-input Multi-output-Orthogonal Frequency Division Multiplexing/Offset Quadrature Amplitude Modulation) system and channel estimation method
CN103269321A (en) Channel estimation method based on unique word in single carrier frequency domain equalization system
CN104486266A (en) Method and device for estimating channel based on MIMO-OFDM system
JP5579626B2 (en) Method and system for selecting cyclic delays in a multi-antenna OFDM system
CN103220242A (en) Channel estimation method based on pilot frequency block in single carrier frequency domain equalizing system
Huang et al. Optimal pilot sequence design for channel estimation in CDD-OFDM systems
CN102255845B (en) Pilot frequency transmission and channel estimation method for bidirectional orthogonal frequency division multiplexing (OFDM) system
CN108881090A (en) Discrete pilot interposition method and device in OFDM-MIMO communication system
US11201765B2 (en) Receiver, transmitter, wireless communication network and method to communicate a non-pulse shaped signal in a multi carrier pulse shaped transmission system
CN106685619A (en) Data sending method and data sending device
CN108880764A (en) Discrete pilot interposition method and device in OFDM-MIMO communication system
CN102065047B (en) Transmitting method and device of double-transmitting-antenna OFDM (Orthogonal Frequency Division Multiplexing) signals
CN104486274B (en) A kind of method for transmitting signals of multiple antennas single carrier-frequency division multiple access system
Mohammed et al. A low complexity OFDM system with minimum intersymbol interference
Gui et al. VBLAST-OFDM system with linear constellation precoding
CN105991496B (en) Pilot frequency sending method, pilot frequency receiving method and device thereof
Nadar et al. OFDM pilot based channel estimation
Huang et al. Modulated coded OFDM systems with special precoder

Legal Events

Date Code Title Description
PB01 Publication
PB01 Publication
SE01 Entry into force of request for substantive examination
SE01 Entry into force of request for substantive examination
WW01 Invention patent application withdrawn after publication

Application publication date: 20181123

WW01 Invention patent application withdrawn after publication